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CTNGMQP-CMolecular Q panels consist of four individual levels, including a negative and are intended to evaluate an assay's clinical range.This dedicated Molecular Q Panel is designed to monitor the performance of molecular assays used in the detection of
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786-565Cetyltrimethylammonium bromide extraction solution for genomic DNA extraction. Applications Genomic DNA extraction buffer solution.
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786-564Cetyltrimethylammonium bromide extraction solution for genomic DNA extraction. Applications Genomic DNA extraction buffer solution.
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14959-1A water soluble, cyclic octapeptide which acts as a receptor antagonist that is selective for the µ opioid receptor (IC<sub>50</sub> = 3.5 nM) over the &delta receptor (IC<sub>50</sub> = 4,500 nM) a poor antagonist of the somatostatin
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Z03373-1Cytotoxic T lymphocyte-associated molecule-4 (CTLA-4) is a cell surface molecule that is closely related to CD28, and a powerful negative regulator of T cell activation. Structurally, CTLA-4 is a member of the Ig superfamily, having a single
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Z03373-50Cytotoxic T lymphocyte-associated molecule-4 (CTLA-4) is a cell surface molecule that is closely related to CD28, and a powerful negative regulator of T cell activation. Structurally, CTLA-4 is a member of the Ig superfamily, having a single
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CTNGTQC-BCTNG Q Control (TM matrix)
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CTNGUQC-BCTNG Q Control (Urine matrix)
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19570-1An amide derivative that selectively activates the HAT p300, with maximal activation at 275 µM.
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19570-5An amide derivative that selectively activates the HAT p300, with maximal activation at 275 µM.
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17122-1An orally bioavailable, blood-brain barrier permeable complex used in cellular imaging experiments to selectively label hypoxic tissue improves locomotor function and survival in a transgenic ALS mouse model by delivering copper specifically to
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17122-10An orally bioavailable, blood-brain barrier permeable complex used in cellular imaging experiments to selectively label hypoxic tissue improves locomotor function and survival in a transgenic ALS mouse model by delivering copper specifically to